D'Souza Malcolm J, Kevill Dennis N
Department of Chemistry, Wesley College, Dover, DE 19901-3875, USA.
Department of Chemistry and Biochemistry, Northern Illinois University, DeKalb, IL 60115-2862, USA.
Int J Mol Sci. 2016 Jan 15;17(1):111. doi: 10.3390/ijms17010111.
Carbamoyl chlorides are important intermediates, both in the research laboratory and in industrial scale syntheses. The most studied and used are the disubstituted derivatives, incorporating either aryl or alkyl groups (Ar2NCOCl or R2NCOCl). Sometimes, the groups are tied back to give a ring and piperidino- and morpholino-derivatives are commonly encountered. Some studies have been made with two different groups attached. Solvolyses tend to occur at the carbonyl carbon, with replacement of the chloride ion. Studies of both rate and products are reviewed and the solvolysis reactions are usually SN1, although addition of an amine leads to a superimposable bimolecular component. Many of the studies under solvolytic conditions include the application of the extended Grunwald-Winstein equation. The monosubstituted derivatives (ArNHCOCl or RNHCOCl) are less studied. They are readily prepared by the addition of HCl to an isocyanate. In acetonitrile, they decompose to set up and reach equilibrium with the isocyanate (ArNCO or RNCO) and HCl. Considering that the structurally related formyl chloride (HOCOCl) is highly unstable (with formation of HCl + CO2), the unsubstituted carbamoyl chloride (H2NCOCl) is remarkably stable. Recommended synthetic procedures require it to survive reaction temperatures in the 300-400 °C range. There has been very little study of its reactions.
碳酰氯在研究实验室和工业规模合成中都是重要的中间体。研究和使用最多的是二取代衍生物,其中包含芳基或烷基(Ar2NCOCl或R2NCOCl)。有时,这些基团会连接在一起形成环,哌啶基和吗啉基衍生物很常见。也有一些关于连接两个不同基团的研究。溶剂解反应倾向于在羰基碳上发生,氯离子被取代。本文综述了反应速率和产物的研究,溶剂解反应通常是SN1反应,不过加入胺会导致叠加的双分子反应成分。许多在溶剂解条件下的研究都应用了扩展的Grunwald-Winstein方程。单取代衍生物(ArNHCOCl或RNHCOCl)的研究较少。它们可通过向异氰酸酯中加入HCl轻松制备。在乙腈中,它们会分解并与异氰酸酯(ArNCO或RNCO)和HCl建立并达到平衡。鉴于结构相关的甲酰氯(HOCOCl)非常不稳定(会形成HCl + CO2),未取代的碳酰氯(H2NCOCl)却非常稳定。推荐的合成方法要求它在300 - 400°C的反应温度下存活。关于它的反应的研究很少。